finished the test
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@ -759,21 +759,23 @@ class Building(CityObject):
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if demand_type.lower() == consumption_type.lower():
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if consumption_type in (cte.HEATING, cte.DOMESTIC_HOT_WATER):
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for generation_system in energy_system_generation_systems:
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coefficient_of_performance = generation_system.generic_generation_system[0].heat_efficiency
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generic_gen = generation_system.generic_generation_system
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print(generation_system)
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coefficient_of_performance = generation_system.generic_generation_system.heat_efficiency
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elif consumption_type == cte.COOLING:
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for generation_system in energy_system_generation_systems:
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coefficient_of_performance = generation_system.generic_generation_system[0].cooling_efficiency
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coefficient_of_performance = generation_system.generic_generation_system.cooling_efficiency
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elif consumption_type == cte.ELECTRICITY:
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for generation_system in energy_system_generation_systems:
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coefficient_of_performance = \
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generation_system.generic_generation_system[0].electricity_efficiency
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generation_system.generic_generation_system.electricity_efficiency
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if coefficient_of_performance == 0:
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values = [0] * len(demand)
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final_energy_consumed = values
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else:
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final_energy_consumed = []
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for demand_value in demand:
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final_energy_consumed.append(demand_value / coefficient_of_performance)
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final_energy_consumed.append(demand_value / float(coefficient_of_performance))
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return final_energy_consumed
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@property
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@ -799,8 +801,8 @@ class Building(CityObject):
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for energy_system in self.energy_systems:
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energy_system_generation_systems = energy_system.generation_systems
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for generation_system in energy_system_generation_systems:
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if generation_system.generic_generation_system[0].type == cte.PHOTOVOLTAIC:
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_efficiency = generation_system.generic_generation_system[0].electricity_efficiency
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if generation_system.generic_generation_system.type == cte.PHOTOVOLTAIC:
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_efficiency = generation_system.generic_generation_system.electricity_efficiency
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self._onsite_electrical_production = {}
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for _key in self.roofs[0].global_irradiance.keys():
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_results = [0 for _ in range(0, len(self.roofs[0].global_irradiance[_key]))]
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@ -26,10 +26,12 @@ from hub.city_model_structure.energy_systems.distribution_system import Distribu
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from hub.city_model_structure.energy_systems.emission_system import EmissionSystem
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from hub.city_model_structure.energy_systems.thermal_storage_system import ThermalStorageSystem
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class TestSystemsFactory(TestCase):
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"""
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TestSystemsFactory TestCase
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"""
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def setUp(self) -> None:
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"""
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Test setup
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@ -163,22 +165,20 @@ class TestSystemsFactory(TestCase):
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_building_generation_systems = _generic_building_energy_system.generation_systems
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_generic_system_generation_systems = []
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for _building_generation_system in _building_generation_systems:
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_building_generation_system = GenerationSystem()
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_building_generation_system.generic_generation_system = (
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copy.deepcopy(_generic_building_energy_system.generation_systems)
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_generation_system = GenerationSystem()
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_generation_system.generic_generation_system = (
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copy.deepcopy(_building_generation_system)
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)
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if cte.HEATING in _building_energy_equipment.demand_types:
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_generation_system.heat_power = building.heating_peak_load[cte.YEAR][0]
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if cte.COOLING in _building_energy_equipment.demand_types:
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_generation_system.cooling_power = building.cooling_peak_load[cte.YEAR][0]
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_generic_system_generation_systems.append(_generation_system)
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print(_generic_system_generation_systems)
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_building_energy_equipment.generation_systems = _generic_system_generation_systems
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_building_storage_system = ThermalStorageSystem()
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_building_storage_system.generic_storage_system = \
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copy.deepcopy(_generic_building_energy_system.energy_storage_systems)
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if cte.HEATING in _building_energy_equipment.demand_types:
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_building_generation_system.heat_power = building.heating_peak_load[cte.YEAR][0]
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if cte.COOLING in _building_energy_equipment.demand_types:
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_building_generation_system.cooling_power = building.cooling_peak_load[cte.YEAR][0]
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_generic_system_generation_systems.append(_building_generation_system)
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print(_generic_system_generation_systems)
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_building_energy_equipment.generation_systems = _generic_system_generation_systems
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_building_energy_systems.append(_building_energy_equipment)
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building.energy_systems = _building_energy_systems
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@ -188,6 +188,6 @@ class TestSystemsFactory(TestCase):
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print(building.domestic_hot_water_consumption[cte.YEAR][0])
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print(building.onsite_electrical_production[cte.YEAR][0])
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self.assertLess(0, building.heating_consumption[cte.YEAR][0])
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self.assertLess(0, building.cooling_consumption[cte.YEAR][0])
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self.assertEqual(0, building.cooling_consumption[cte.YEAR][0])
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self.assertLess(0, building.domestic_hot_water_consumption[cte.YEAR][0])
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self.assertLess(0, building.onsite_electrical_production[cte.YEAR][0])
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